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Organic cultivation of okra with ground cover of perennial herbaceous legumes

机译:多年生草本豆科植物地被的秋葵的有机栽培

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摘要

The management of green manure with perennial herbaceous legumes has emerged as an interesting practice for vegetable production, improving the cultivation environment and increasing crop yields. In the present study we evaluated the organic okra cultivation in soil covered with perennial herbaceous legumes. The treatments consisted of okra grown in bare soil (control) or covered with tropical kudzo (Pueraria phaseoloides), perennial soybean (Glycine wightii), calopogonium (Calopogonium muconoides), Pinto peanut (Arachis pintoi) and Stylosanthes capitata and Stylosanthes macrocephala. A randomized block design with four replications was used. The weeding of legumes was realized before the okra was sown and this allowed the addition of quantities of dry matter, highlighting the potential of tropical kudzo (3.74 t ha-1), perennial soybean (1.55 t ha-1) and peanut (1.30 t ha-1). Okra cropped in soil covered with tropical kudzo and perennial soybean had the weed lowest dry matter accumulation until 150 days after sowing the okra. At 150 days after sowing the okra, only the areas covered with peanut and calopogonium had higher volumes of water in the soil compared to the control. Throughout the harvest, the okra plants grown in soil covered with perennial soybean and tropical kudzo showed the greatest heights. The maximum okra fruit yield (16.23 t ha-1) was obtained by growing okra in soil covered with perennial soybean.
机译:多年生草本植物对绿肥的管理已成为蔬菜生产,改善耕种环境和提高农作物产量的有趣方法。在本研究中,我们评估了多年生草本豆科植物覆盖的土壤中有机秋葵的种植。处理方法包括在裸露的土壤中秋葵(对照)或覆盖热带秋葵(Pueraria phaseoloides),多年生大豆(Glycine wightii)、,叶草(Calopogonium muconoides),斑豆花生(Arachis pintoi)以及圆头花(Stylosanthes capitata)和圆头花Stylosanthes macrocephala。使用具有四个重复的随机区组设计。在秋葵播种之前就已经实现了豆科植物的除草,这允许添加一定数量的干物质,这突出了热带苦瓜(3.74 t ha-1),多年生大豆(1.55 t ha-1)和花生(1.30 t)的潜力。 ha-1)。秋葵种植到秋葵播种150天后,秋葵播种在土壤中的杂草最低,其干物质积累最低,该秋葵覆盖有热带久保唑和多年生大豆。秋葵播种后的第150天,与对照相比,只有花生和金莲花覆盖的区域土壤水量更高。在整个收获期,秋葵植物生长在多年生大豆和热带苦瓜覆盖的土壤中,显示出最大的高度。通过在多年生大豆覆盖的土壤中种植秋葵来获得最大的秋葵果实产量(16.23 t ha-1)。

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